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Shape monitoring method of submarine cable based on fiber Bragg grating

机译:基于光纤布拉格光栅的海缆形状监测方法

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摘要

Submarine cables are crucial in the transmission of electricity between coastal islands. Compared with terrestrial cables, submarine cables operate under harsher environments and thus their probability of failure is higher. Therefore, the effective monitoring of submarine cables is necessary to prevent related accidents. Quasidistributed sensing technology based on fiber Bragg gratings converts the sensing information into discrete curvature information according to the pure bending theory and subsequently reconstructs the shape of the submarine cable using discrete curvature interpolation and curve reconstruction algorithms. The fiber Bragg grating sensor is placed on the landing cable section to analyze the reconstruction effect and error, demonstrating the feasibility of the method for submarine cable monitoring. Finally, the monitoring results in extreme weather reveal potential safety hazards in the submarine landing cable.
机译:海底电缆在沿海岛屿之间的电力传输中至关重要。与地面电缆相比, 海底电缆在更恶劣的环境中运行, 因此其故障概率更高.因此, 对海底电缆的有效监测对于防止相关事故是必要的.基于光纤布拉格光栅的准分布式传感技术,根据纯弯曲理论将传感信息转换为离散曲率信息,然后利用离散曲率插值和曲线重构算法重构海底光缆的形状。将光纤布拉格光栅传感器放置在登陆光缆断面上,分析了重构效果和误差,论证了该方法在海缆监测中的可行性。最后,通过极端天气下的监测结果,揭示了海底登陆电缆存在安全隐患。

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